首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Investigation of mechanical properties and deformation behavior of single-crystal Al-Cu core-shell nanowire generated using non-equilibrium molecular dynamics simulation
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Investigation of mechanical properties and deformation behavior of single-crystal Al-Cu core-shell nanowire generated using non-equilibrium molecular dynamics simulation

机译:使用非平衡分子动力学模拟产生单晶Al-Cu核心壳纳米线力学性能和变形性能的研究

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摘要

Molecular dynamics (MD) simulation studies were carried out to generate a cylindrical single-crystal Al-Cu core-shell nanowire and its mechanical properties like yield strength and Young's modulus were evaluated in comparison to a solid aluminum nanowire and hollow copper nanowire which combines to constitute the core-shell structure respectively. The deformation behavior due to changes in the number of Wigner-Seitz defects and dislocations during the entire tensile deformation process was thoroughly studied for the Al-Cu core-shell nanowire. The single-crystal Al-Cu core-shell nanowire shows much higher yield strength and Young's modulus in comparison to the solid aluminum core and hollow copper shell nanowire due to tangling of dislocations caused by lattice mismatch between aluminum and copper. Thus, the Al-Cu core-shell nanowire can be reinforced in different bulk matrix to develop new type of light-weight nanocomposite materials with greatly enhanced material properties.
机译:进行分子动力学(MD)模拟研究以产生圆柱形单晶Al-Cu核壳纳米线,与其结合的固体铝纳米线和空心铜纳米线相比,评价其屈服强度和杨氏模量的机械性能。 分别构成核心壳结构。 为Al-Cu核心壳纳米线彻底研究了由于Wigner-Seitz缺陷缺陷和位错的变化引起的变形行为。 与由铝和铜之间的晶格错配引起的缠结引起的缠结,单晶Al-Cu芯壳纳米线与固体铝芯和中空铜壳纳米线相比,含量强度和杨氏模量更高。 因此,可以以不同的散装基质增强Al-Cu核 - 壳纳米线,以开发具有大大增强的材料性能的新型轻型纳米复合材料。

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